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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Extraction of connected river networks from multi-temporal remote sensing imagery using a path tracking technique
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Extraction of connected river networks from multi-temporal remote sensing imagery using a path tracking technique

机译:用路径跟踪技术提取多时间遥感图像的连接河网

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摘要

Precise delineation of river networks is important for accurate hydrological and flood modelling. Whilst remote sensing (RS) has showed great potential in monitoring hydrological changes over space and time, the existing RS-based methods extract river networks based on local morphologies and seldom take into account the overall hydrological connectivity of the rivers. The existing methods also commonly neglect the effect of seasonal variation of water surfaces and the existence of temporary water bodies, which deteriorate the precision of positioning river networks. To address these challenges, a new two-stage method is developed to Extract spatiotemporal variation of water surfaces based on Multi-temporal remote sensing Imagery and Delineate connected river networks with improved accuracy (EMID method for short) using a path tracking technique. The EMID method delineates connected river networks using (a) multi-temporal imagery and a Random Forest model to synoptically map the location and extent of water surfaces under different hydrological conditions, and (b) an optimization algorithm to find the best river paths based on water-occurrence frequency. Four drainage basins with various river morphologies are considered to validate EMID. Comparing with alternative methods, the EMID method consistently produces river network results with improved accuracy in terms of stream location, river coverage and network connectivity.
机译:精确描绘河网络对于准确的水文和洪水建模很重要。虽然遥感(RS)在监测空间和时间内监测水文变化的巨大潜力,但基于RS的基于RS的方法基于局部形态提取河流网络,很少考虑到河流的整体水文连通性。现有方法也通常忽视水面季节变化的影响以及临时水体的存在,这使得定位河网络的精度恶化。为了解决这些挑战,开发了一种新的两阶段方法,以利用路径跟踪技术提高精度(简称为简称的EmID方法的Delineate连接的河网络,提取了一种新的两阶段方法。 EMID方法使用(a)多时间图像和随机林模型来描绘连接的河网,以在不同的水文条件下展示水面的位置和范围,(b)优化算法,以找到基于的最佳河道水分频率。有四个具有各种河流形态的排水盆地被认为是验证Emid。与替代方法进行比较,EmID方法一直在流量,河流覆盖和网络连接方面的准确性提高了河网的结果。

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